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Blip glitches are short noise transients present in data from ground-based gravitational-wave observatories.
Laser phase and frequency stabilization using an optical resonator
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Multiresolution techniques for the detection of gravitational-wave bursts
Chatterji S, Blackburn L, Martin G, Katsavounidis E · 2004
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The search for gravitational wave bursts in data from the second LIGO science run
Chatterji SK · 2005
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The LSC Glitch Group: Monitoring Noise Transients during the fifth LIGO Science Run
Blackburn L, et al · 2008
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LIGO internal technical report T0900649
Kim H, King P, Krämer C, Kwee P, Pöld J, Savage R, et al.. PSL final design; 2010 · 2010
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A hierarchical method for vetoing noise transients in gravitational-wave detectors
Smith JR, Abbott T, Hirose E, Leroy N, MacLeod D, McIver J, et al · 2011
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Update on quadruple suspension design for Advanced LIGO
Aston SM, et al · 2012
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Sensors and Actuators for the Advanced LIGO Mirror Suspensions
Carbone L, et al · 2012
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DC readout experiment in Enhanced LIGO
Fricke TT, Smith-Lefebvre ND, Abbott R, Adhikari R, Dooley KL, Evans M, et al · 2012
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Data Quality Studies of Enhanced Interferometric Gravitational Wave Detectors
McIver J · 2012
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Stabilized high-power laser system for the gravitational wave detector Advanced LIGO
Kwee P, Bogan C, Danzmann K, Frede M, Kim H, King P, et al · 2012
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LIGO internal technical report T1100625
Bork R. Real-time Code Generator (RCG) Runtime Diagnostics (RCG V2.7); 2013 · 2013
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Implementing a search for aligned-spin neutron star-black hole systems with advanced ground based gravitational wave detectors
Dal Canton T, et al · 2014
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Advanced LIGO
The LIGO Scientific Collaboration · 2015
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Advanced Virgo: a second-generation interferometric gravitational wave detector
The Virgo Collaboration · 2015
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Seismic isolation of Advanced LIGO: Review of strategy, instrumentation and performance
Matichard F, et al · 2015
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Prospects for doubling the range of Advanced LIGO
Miller J, Barsotti L, Vitale S, Fritschel P, Evans M, Sigg D · 2015
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Environmental influences on the LIGO gravitational wave detectors during the 6th science run
Effler A, Schofield RMS, Frolov VV, González G, Kawabe K, Smith JR, et al · 2015
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Improving the Data Quality of Advanced LIGO Based on Early Engineering Run Results
Nuttall L, et al · 2015
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https://alog.ligo-wa.caltech.edu/aLOG/index.php?callRep=22980
Roma V; 2015 · 2015
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https://tds.ego-gw.it/ql/?c=10651
Robinet F. Omicron: An Algorithm to Detect and Characterize Transient Noise in Gravitational-Wave Detectors; 2015 · 2015
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Observation of gravitational waves from a binary black hole merger
The LIGO Scientific Collaboration and the Virgo Collaboration · 2016
GW170817: Observation of gravitational waves from a binary neutron star inspiral
The LIGO Scientific Collaboration, The Virgo Collaboration · 2017
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GW170104: Observation of a 50-solar-mass binary black hole coalescence at redshift 0.2
The LIGO Scientific Collaboration and the Virgo Collaboration · 2017
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GW170608: Observation of a 19-solar-mass binary black hole coalescence
The LIGO Scientific Collaboration, The Virgo Collaboration · 2017
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GW170814: A three-detector observation of gravitational waves from a binary black hole coalescence
The LIGO Scientific Collaboration, The Virgo Collaboration · 2017
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Calibration of the Advanced LIGO detectors for the discovery of the binary black-hole merger GW150914
The LIGO Scientific Collaboration · 2017
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Cited alongside, same era.
GW151226: Observation of gravitational waves from a 22-solar-mass binary black hole coalescence
The LIGO Scientific Collaboration and the Virgo Collaboration · 2016
Cited alongside, same era.
Binary black hole mergers in the first Advanced LIGO observing run
The LIGO Scientific Collaboration and the Virgo Collaboration · 2016
Cited alongside, same era.
Sensitivity of the Advanced LIGO detectors at the beginning of gravitational wave astronomy
The LIGO Scientific Collaboration · 2016
Cited alongside, same era.
Characterization of transient noise in Advanced LIGO relevant to gravitational wave signal GW150914
The LIGO Scientific Collaboration, The Virgo Collaboration · 2016
Cited alongside, same era.
The PyCBC search for gravitational waves from compact binary coalescence
Usman SA, Nitz AH, Harry IW, Biwer CM, Brown DA, Cabero M, et al · 2016
Cited alongside, same era.
GW150914: The Advanced LIGO detectors in the era of first discoveries
The LIGO Scientific Collaboration, The Virgo Collaboration · 2016
Cited alongside, same era.
Characterizing transient noise in the LIGO detectors
Nuttall LK · 2017
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Designing a template bank to observe compact binary coalescences in Advanced LIGO’s second observing run. 2017;
Dal Canton T, Harry IW · 2017
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Gravity Spy: integrating Advanced LIGO detector characterization, machine learning, and citizen science
Zevin M, Coughlin S, Bahaadini S, Besler E, Rohani N, Allen S, et al · 2017
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GWTC-1: A gravitational-wave transient catalog of compact binary mergers observed by LIGO and Virgo during the first and second observing runs. 2018;
The LIGO Scientific Collaboration, The Virgo Collaboration · 2018
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Effects of data quality vetoes on a search for compact binary coalescences in Advanced LIGO’s first observing run
The LIGO Scientific Collaboration, The Virgo Collaboration · 2018
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Gravitational-wave astronomy with compact binary coalescences: from blip glitches to the black hole area increase law
Cabero Müller MA · 2018
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Reconstructing the calibrated strain signal in the Advanced LIGO detectors
Viets A, et al · 2018
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Calibration of Advanced Virgo and Reconstruction of the Gravitational Wave Signal h ( t ) h(t) during the Observing Run O2
The Virgo Collaboration · 2018
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Identification and mitigation of Advanced LIGO noise sources
Berger BK · 2018
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Distinguishing short duration noise transients in LIGO data to improve the PyCBC search for gravitational waves from high mass binary black hole mergers
Nitz AH · 2018
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Rapid detection of gravitational waves from compact binary mergers with PyCBC Live
Nitz AH, Dal Canton T, Davis D, Reyes S · 2018
Later among the works it cites.